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Hierarchical Nanostructures Self-Assembled from a Mixture System Containing Rod-Coil Block Copolymers and Rigid Homopolymers

机译:从包含杆-油嵌段共聚物和刚性均聚物的混合物系统中自组装的分层纳米结构

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摘要

Self-assembly behavior of a mixture system containing rod-coil block copolymers and rigid homopolymers was investigated by using Brownian dynamics simulations. The morphologies of formed hierarchical self-assemblies were found to be dependent on the Lennard-Jones (LJ) interaction εRR between rod blocks, lengths of rod and coil blocks in copolymer, and mixture ratio of block copolymers to homopolymers. As the εRR value decreases, the self-assembled structures of mixtures are transformed from an abacus-like structure to a helical structure, to a plain fiber, and finally are broken into unimers. The order parameter of rod blocks was calculated to confirm the structure transition. Through varying the length of rod and coil blocks, the regions of thermodynamic stability of abacus, helix, plain fiber, and unimers were mapped. Moreover, it was discovered that two levels of rod block ordering exist in the helices. The block copolymers are helically wrapped on the homopolymer bundles to form helical string, while the rod blocks are twistingly packed inside the string. In addition, the simulation results are in good agreement with experimental observations. The present work reveals the mechanism behind the formation of helical (experimentally super-helical) structures and may provide useful information for design and preparation of the complex structures.
机译:通过使用布朗动力学模拟研究了包含杆-线圈嵌段共聚物和刚性均聚物的混合体系的自组装行为。发现形成的分层自组装体的形态取决于棒状嵌段之间的Lennard-Jones(LJ)相互作用εRR,共聚物中棒状和卷曲嵌段的长度以及嵌段共聚物与均聚物的混合比。随着εRR值的降低,混合物的自组装结构从算盘状结构转变为螺旋结构,再转变为普通纤维,最后破碎为单体。计算棒块的顺序参数以确认结构转变。通过改变杆和线圈块的长度,可以绘制算盘,螺旋,普通纤维和单体的热力学稳定性区域。此外,发现在螺旋中存在两个水平的杆块排序。嵌段共聚物被螺旋地包裹在均聚物束上以形成螺旋线,而棒状嵌段被扭曲地包装在线内部。另外,仿真结果与实验观察结果吻合良好。本工作揭示了螺旋(实验性超螺旋)结构形成的机理,并可能为复杂结构的设计和制备提供有用的信息。

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